Board Type:Filter Board
Model Number:AOFC-03
Brand:ABB
Module Category:Control System Components
Power Rating:Up to 500V DC
Current Rating:Up to 10A
Filter Capacitance:0.1μF to 100μF
Filter Inductance:1mH to 10mH
Operating Temperature Range:-40°C to +85°C
Certifications:[“UL”,”CE”,”EN61010″]
Material:High-grade aluminum alloy with epoxy resin coating
Dimensions:250mm x 100mm x 10mm
The ABB AOFC-03 Filter Board is engineered for optimal power conditioning and filtering, making it an indispensable component in complex industrial control systems. It ensures stable operation by removing unwanted noise and harmonics from electrical power sources, thereby improving the overall efficiency and reliability of machinery and processes.
This filter board supports both single and three-phase power inputs, making it versatile for various industrial applications. With a high power rating of up to 1500 VA, it can handle substantial electrical loads without compromising on performance.
Featuring advanced filtering technology, the AOFC-03 excels in filtering both high-frequency and low-frequency disturbances, ensuring a cleaner power supply that enhances the lifespan and performance of connected equipment. Its high-efficiency rating guarantees minimal energy loss during power conditioning, contributing to lower operational costs and environmental impact.
Designed with robust materials for durability, the ABB AOFC-03 Filter Board operates within a wide temperature range (-20°C to +70°C), making it suitable for use in harsh industrial environments. Its compact dimensions and lightweight design facilitate easy installation and maintenance, optimizing space utilization and reducing downtime.
To further enhance system safety, the AOFC-03 incorporates protective measures against overloads and short circuits, ensuring uninterrupted operation even under adverse conditions. Additionally, its compatibility with ABB’s manual motor protectors offers an alternative to fuses for branch circuit protection, providing a reliable safeguard against potential failures.
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